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Reduced dynamin-1 levels in neurons lacking MUNC18-1

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Abstract

MUNC18-1 (also known as syntaxin-binding protein-1, encoded by Stxbp1) binds to syntaxin-1. Together, these proteins regulate synaptic vesicle exocytosis and have a separate role in neuronal viability. In Stxbp1 null mutant neurons, syntaxin-1 protein levels are reduced by 70%. Here, we show that dynamin-1 protein levels are reduced at least to the same extent, and transcript levels of Dnm1 (which encodes dynamin-1) are reduced by 50% in Stxbp1 null mutant brain. Several, but not all, other endocytic proteins were also found to be reduced, but to a lesser extent. The reduced dynamin-1 expression was not observed in SNAP25 null mutants or in double-null mutants of MUNC13-1 and -2 (also known as Unc13a and Unc13b, respectively), in which synaptic vesicle exocytosis is also blocked. Co-immunoprecipitation experiments demonstrated that dynamin-1 and MUNC18-1 do not bind directly. Furthermore, MUNC18-1 levels were unaltered in neurons lacking all three dynamin paralogues. Finally, overexpression of dynamin-1 was not sufficient to rescue neuronal viability in Stxbp1 null mutant neurons; thus, the reduction in dynamin-1 is not the single cause of neurodegeneration of these neurons. The reduction in levels of dynamin-1 protein and mRNA, as well as of other endocytosis proteins, in Stxbp1 null mutant neurons suggests that MUNC18-1 directly or indirectly controls expression of other presynaptic genes.

Original languageEnglish
Article numberjcs260132
Pages (from-to)1-12
Number of pages12
JournalJournal of cell science
Volume135
Issue number22
Early online date21 Nov 2022
DOIs
Publication statusPublished - Nov 2022

Bibliographical note

Publisher Copyright:
© 2022. Published by The Company of Biologists Ltd.

Funding

This work was supported by a European Research Council (ERC) Advanced grant (322966) of the European Union (to M.V.), COSYN (Comorbidity and Synapse Biology in Clinically Overlapping Psychiatric Disorders; Horizon 2020 Framework Programme of the European Union under RIA grant agreement 667301 to M.V.) and Lundbeckfonden (R277-2018-802 to M.V.). Open access funding provided by Vrije Universiteit Amsterdam. Deposited in PMC for immediate release.

FundersFunder number
Pan-Massachusetts Challenge
Seventh Framework Programme
Royal Irish Academy
Vrije Universiteit Amsterdam
European Research Council
Horizon 2020 Framework Programme667301
European Commission322966
LundbeckfondenR277-2018-802

    Keywords

    • Dynamin
    • Endocytosis
    • Exocytosis
    • MUNC18-1
    • Presynaptic genes

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